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A Force to Be Reckoned With: A Review of Synthetic Microswimmers Powered by Ultrasound

机译:不可忽视的力量:超声驱动的合成微游泳器的回顾

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摘要

Synthetic microswimmers are a class of artifi cial nano-or microscale particle capable of converting external energy into motion. They are similar to natural microswimmers such as bacteria in behavior and are, therefore, of great interest to the study of active matter. Additionally, microswimmers show promise in applications ranging from bioanalytics and environmental monitoring to particle separation and drug delivery. However, since their sizes are on the nano-/microscale and their speeds are in the mu m s(-1) range, they fall into a low Reynolds number regime where viscosity dominates. Therefore, new propulsion schemes are needed for these microswimmers to be able to efficiently move. Furthermore, many of the hotly pursued applications call for innovations in the next phase of development of biocompatible microswimmers. In this review, the latest developments of microswimmers powered by ultrasound are presented. Ultrasound, especially at MHz frequencies, does little harm to biological samples and provides an advantageous and well-controlled means to efficiently power microswimmers. By critically reviewing the recent progress in this research field, an introduction of how ultrasound propels colloidal particles into autonomous motion is presented, as well as how this propulsion can be used to achieve preliminary but promising applications.
机译:合成微游泳器是一类能够将外部能量转化为运动的人造纳米或微米级颗粒。它们在行为上类似于诸如细菌的天然微游泳器,因此对于活性物质的研究非常感兴趣。此外,微游泳器在从生物分析和环境监测到颗粒分离和药物输送的应用中显示出广阔的前景。但是,由于它们的大小在纳米/微米范围内,并且它们的速度在μs(-1)范围内,因此它们陷入了以粘度为主的低雷诺数体系。因此,这些微游泳者需要新的推进方案,以能够有效地运动。此外,许多热门应用要求在生物相容性微游泳机的下一阶段开发中进行创新。在这篇评论中,介绍了由超声波驱动的微游泳器的最新发展。超声波,尤其是在MHz频率上的超声波,对生物样品的损害很小,并且提供了一种有效控制微扫描仪效率的有利且控制良好的方法。通过批判性地回顾该研究领域的最新进展,介绍了超声如何将胶体颗粒推进自主运动,以及如何使用这种推进来实现初步但有希望的应用。

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